Peracchia Camillo, Salim Mohammad, Peracchia Lillian L
Department of Pharmacology and Physiology, University of Rochester School of Medicine, 601 Elmwood Avenue, Rochester, NY 14642-8711, USA.
J Membr Biol. 2007 Feb;215(2-3):161-8. doi: 10.1007/s00232-007-9015-2. Epub 2007 Jun 14.
Gap junction channels are gated by a chemical gate and two transjunctional voltage (V (j))-sensitive gates: fast and slow. Slow V (j) gate and chemical gate are believed to be the same. The slow gate closes at the negative side of V (j) and is mostly inactive without uncouplers or connexin (Cx) mutations. In contrast, our present data indicate otherwise. Oocytes expressing Cx32 were subjected to series of -100 mV V (j) pulses (12-s duration, 30-s intervals). Both peak (PK) and steady-state (SS) junctional conductances (G (j)), measured at each pulse, decreased exponentially by 50-60% (tau = approximately 1.2 min). G (j)PK dropped more dramatically, such that G (j)SS/G (j)PK increased from 0.4 to 0.6, indicating a drop in V (j) sensitivity. Less striking effects were obtained with -60 mV pulses. During recovery, G (j), measured by applying 20 mV pulses (2-s duration, 30-s intervals), slowly returned to initial values (tau = approximately 7 min). With reversal of V (j) polarity, G (j)PK briefly increased and G (j)SS/G (j)PK decreased, suggesting that V (j)-dependent hemichannel reopening is faster than hemichannel closing. Similar yet more dramatic results were obtained with COOH-terminus truncated Cx32 (Cx32-D225), a mutant believed to lack fast V (j) gating. The data indicate that the slow gate of Cx32 is active in the absence of uncouplers or mutations and displays unusual V (j) behavior. Based on previous evidence for direct calmodulin (CaM) involvement in chemical/slow gating, this may also be CaM-mediated.
缝隙连接通道由一个化学门控和两个跨连接电压(V(j))敏感门控:快速门控和慢速门控。慢速V(j)门控和化学门控被认为是相同的。慢速门控在V(j)的负极关闭,并且在没有解偶联剂或连接蛋白(Cx)突变的情况下大多处于非活性状态。相比之下,我们目前的数据表明情况并非如此。表达Cx32的卵母细胞接受一系列-100 mV的V(j)脉冲(持续12秒,间隔30秒)。在每个脉冲处测量的峰值(PK)和稳态(SS)连接电导(G(j))均呈指数下降50 - 60%(时间常数τ约为1.2分钟)。G(j)PK下降更为显著,使得G(j)SS/G(j)PK从0.4增加到0.6,表明V(j)敏感性下降。-60 mV脉冲产生的影响不太明显。在恢复过程中,通过施加20 mV脉冲(持续2秒,间隔30秒)测量的G(j)缓慢恢复到初始值(时间常数τ约为7分钟)。随着V(j)极性的反转,G(j)PK短暂增加,G(j)SS/G(j)PK下降,表明V(j)依赖性半通道重新开放比半通道关闭更快。用COOH末端截短的Cx32(Cx32-D225)获得了类似但更显著的结果,该突变体被认为缺乏快速V(j)门控。数据表明,在没有解偶联剂或突变的情况下,Cx32的慢速门控是活跃的,并表现出不寻常的V(j)行为。基于先前关于钙调蛋白(CaM)直接参与化学/慢速门控的证据,这也可能是CaM介导的。